Department of Pharmaceutics, School of Pharmacy, China Pharmaceutical University, Nanjing, Jiangsu, People's Republic of China.
School of Life Science and Technology, China Pharmaceutical University, Nanjing, Jiangsu, People's Republic of China.
J Biomed Mater Res A. 2019 Dec;107(12):2643-2666. doi: 10.1002/jbm.a.36770. Epub 2019 Aug 19.
For cancer therapy, the usefulness of mesoporous silica nanoparticles (MPSNPs) has been widely discussed, likely due to its inorganic nature and excellent structural features. The MPSNPs-based chemotherapeutics have been promisingly delivered to their target sites that help to minimize side effects and improve therapeutic effectiveness. A wide array of studies have been conducted to functionalize drug-loaded MPSNPs using targeting ligands and stimuli-sensitive substances. In addition, anticancer drugs have been precisely delivered to their target sites using MPSNPs, which respond to multi-stimuli. Furthermore, MPSNPs have been extensively tested for their safety and compatibility. The toxicity level of MPSNPs is substantially lower as compared to that of colloidal silica; however, in oxidative stress, they exhibit cytotoxic features. The biocompatibility of MPSNPs can be improved by modifying their surfaces. This article describes the production procedures, functionalization, and applications of biocompatible MPSNPs in drug delivery.
对于癌症治疗,介孔硅纳米粒子(MPSNPs)的用途已经得到了广泛的讨论,这可能是由于其无机性质和优异的结构特征。基于 MPSNPs 的化疗药物已经被有希望地递送到它们的靶部位,有助于最大限度地减少副作用并提高治疗效果。已经进行了大量的研究,通过靶向配体和刺激敏感物质对载药 MPSNPs 进行功能化。此外,使用 MPSNPs 精确地将抗癌药物递送到对多刺激有响应的靶部位。此外,MPSNPs 的安全性和兼容性也得到了广泛的测试。与胶体硅相比,MPSNPs 的毒性水平要低得多;然而,在氧化应激下,它们表现出细胞毒性特征。通过修饰其表面可以提高 MPSNPs 的生物相容性。本文描述了生物相容的 MPSNPs 在药物输送中的生产程序、功能化和应用。